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Numerical Investigation of Applying High-carbon Metallic Briquette in Blast Furnace Ironmaking

机译:高碳金属团块在高炉炼铁中的应用数值研究

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Application of high-carbon metallic briquette (HCMB) in the blast furnace (BF) ironmaking for coke saving was previously proposed. This paper is focused on clarifying the in-furnace phenomena and demonstrating the advantages of applying the HCMB in BF ironmaking. A mathematical model has been formulated based on the gas-solid counterflow and its validity was confirmed by the comparison of the simulation results with the averaged industrial data from a BF with a productivity of 6250 tHM/day. Afterward, BF operations under two HCMB mixing ratios (5% and 10%) were simulated. Simulation results indicate that charging HCMB in BF can suppress the coke gasification and improve the ore reduction above the CZ. Coke of approximately 12 kg could be saved for producing one-ton hot metal from the ore under an HCMB mixing ratio of 5%, and approximately 17 kg under an HCMB mixing ratio of 10%. Simulation results still indicate that the reasonable mixing ratio of HCMB is less than 5%, under which, significant changes of the BF operation conditions for HCMB charging are not required.
机译:先前提出了高碳金属团块(HCMB)在高炉(BF)炼铁中的应用,以节省焦炭。本文着重于澄清炉内现象,并说明将HCMB用于高炉炼铁的优势。已经基于气固逆流建立了数学模型,并通过将模拟结果与高炉6250 tHM / day的高炉平均工业数据进行比较,证实了其有效性。之后,模拟了两种HCMB混合比(5%和10%)下的高炉操作。模拟结果表明,在高炉中加入HCMB可以抑制焦炭气化,并提高CZ上方的矿石还原率。在HCMB混合比为5%的情况下,从矿石中生产一吨铁水可节省约12千克的焦炭,在HCMB混合比为10%的情况下,可节省约17千克的焦炭。仿真结果仍然表明,HCMB的合理混合比例小于5%,在这种情况下,不需要为HCMB充电而改变高炉​​操作条件。

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